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Development of digital feedback systems for beam position and energy at the Thomas Jefferson National Accelerator Facility

机译:在托马斯·杰斐逊国家加速器设施中开发了用于波束位置和能量的数字反馈系统

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The development of beam-based digital feedback systems for the CEBAF accelerator has gone through several stages. As the accelerator moved from commissioning to operation for the nuclear physics program, the top priority was to stabilize the beam against slow energy and position drifts (>1 Hz). These slow drifts were corrected using the existing accelerator monitors and actuators driven by software running on top of the EPICS control system. With slow drifts corrected, attention turned to quantifying the higher frequency disturbances on the beam and to designing the required feedback systems needed to achieve the CEBAF design stability requirements. Results from measurements showed the major components in position and energy to be at harmonics of the power line frequencies of 60, 120, and 180 Hz. Hardware and software was installed in two locations of the accelerator as prototypes for the faster feedback systems needed. This paper gives an overview of the measured beam disturbances and the feedback systems developed.
机译:CEBAF加速器基于波束的数字反馈系统的开发经历了多个阶段。当加速器从核物理计划的调试过渡到运行时,当务之急是使光束稳定,以防能量缓慢和位置漂移(> 1 Hz)。使用由EPICS控制系统顶部运行的软件驱动的现有加速器监控器和执行器,可以纠正这些缓慢的漂移。校正慢漂移后,注意力转向量化光束上的较高频率干扰,并设计实现CEBAF设计稳定性要求所需的所需反馈系统。测量结果表明,位置和能量的主要成分为60、120和180 Hz电力线频率的谐波。硬件和软件安装在加速器的两个位置,作为所需的更快反馈系统的原型。本文概述了测得的光束干扰和开发的反馈系统。

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